JP2004245489A - Fan coil unit - Google Patents

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Publication number
JP2004245489A
JP2004245489A JP2003035241A JP2003035241A JP2004245489A JP 2004245489 A JP2004245489 A JP 2004245489A JP 2003035241 A JP2003035241 A JP 2003035241A JP 2003035241 A JP2003035241 A JP 2003035241A JP 2004245489 A JP2004245489 A JP 2004245489A
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JP
Japan
Prior art keywords
air
conditioned
heat exchange
fan coil
coil unit
Prior art date
Legal status (The legal status is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the status listed.)
Pending
Application number
JP2003035241A
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Japanese (ja)
Inventor
Ichiro Doi
井 一 郎 土
Current Assignee (The listed assignees may be inaccurate. Google has not performed a legal analysis and makes no representation or warranty as to the accuracy of the list.)
Kurogane Kosakusho Ltd
Original Assignee
Kurogane Kosakusho Ltd
Priority date (The priority date is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the date listed.)
Filing date
Publication date
Application filed by Kurogane Kosakusho Ltd filed Critical Kurogane Kosakusho Ltd
Priority to JP2003035241A priority Critical patent/JP2004245489A/en
Publication of JP2004245489A publication Critical patent/JP2004245489A/en
Pending legal-status Critical Current

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Abstract

<P>PROBLEM TO BE SOLVED: To obtain a fan coil unit for individually air-conditioning, particularly, for every bed of a multibed hospital room, having a simple construction permitting inexpensive manufacture and actualizing the setting of stable air-conditioning temperatures of air-conditioned spaces independently of the number of blowers being operated (the number of the air-conditioned spaces being air-conditioned). <P>SOLUTION: The fan coil unit individually supplies air sucked into the unit to the plurality of air-conditioned spaces. The unit is sectioned into a plurality of compartments corresponding to the plurality of air-conditioned spaces. The compartments each have a blower to be independently driven and a common heat exchange coil having sectioned ranges to be used for every compartment. <P>COPYRIGHT: (C)2004,JPO&NCIPI

Description

【0001】
【発明の属する技術分野】
本発明は、特に多床室の病室を各ベッドごとに個別に空調するファンコイルユニットに関するものである。
【0002】
【従来の技術】
従来、一つの空調機で複数のベッド(被空調空間)を個別に空調する場合、空調機から複数の被空調空間にダクトを配設し、各被空調空間のダクトの吹出口に可変風量(VAV)ユニットを設けて、空調を行う方法があった。
しかし、この方法では、各被空調空間の風量を変化させながら静圧もコントロールする場合、制御装置が複雑化しコスト高となる欠点があった。
そこで、空調機の機体内に熱交換コイルを設けた熱交換室と、この熱交換室と連通する複数の分流路とを形成し、この各分流路に熱交換室から分流路の向かう方向に空気を送る送風機と、上記被空調空間からの逆流を防止するダンパー機構を設けた構成のファンコイルユニットが提供されるようになった。(例えば特許文献1参照。)
【0003】
上記構成によると、熱交換コイルは、各被空調空間部のすべてを空調する場合も、一箇所のみを空調し、他の被空調空間を空調しない場合であっても、熱交換コイルを全幅に渡って常に使用するので、被空調空間ごとでの吹出し温度の制御が非常に困難であった。
すなわち、熱交換コイルを通過する風量は稼働している送風機の数(空調している被空調空間の数)によって常に変化するのに対し、熱交換コイルは風量に関係なく最大幅で使用されるため、被空調空間への高、中、低の設定吹出温度が、稼働している送風機の数によって、一定ではなかった。
又、各分流路が熱交換室を介して連通しているので、被空調空間同士も熱交換コイルを通過せず空気が流通することとなり、この被空調空間からの逆流防止のためのダンパーが必要となり、その分コストアップの原因となっていた。
【0004】
【特許文献1】
特許第2930295号公報
【0005】
【発明が解決しようとする課題】
本発明は、簡単な構造で、安価に製作出来、各被空調空間の温度設定が、稼働している送風機の数(空調している被空調空間の数)に関係なく、安定させ得るファンコイルユニットの提供を目的とする。
【0006】
【課題を解決する為の手段】
上記課題を解決する為、本発明が手段とする第1の特徴は、機体内部に吸い込まれた空気を複数の被空調空間に個別に給気するファンコイルユニットであって、機体内部は、複数の被空調空間に対応して複数個の分室に区画され、各分室は、それぞれ独立して駆動する送風機と、分室ごとに使用される範囲が区画された共用の熱交換コイルを内部に有しているものである。
【0007】
次に、本発明が手段とする第2の特徴は、前記第1の特徴に加え、被空調空間は、複数の個別空間と一つの共用空間よりなり、個別空間はダクトを介して分流した調和空気によって空気調和し、共用空間は機体本体下方の長手方向全幅から吹き出した調和空気によって空気調和するものである。
【0008】
次に、本発明が手段とする第3の特徴は、機体内部に吸い込まれた空気を分流して、複数の被空調空間に給気するファンコイルユニットであって、機体内の上部に左右に所定間隔を有して平行に2つの熱交換コイルが配設され、吸込んだ空気を上方向けて吹出す送風機の吹出口が臨む仕切板が2つの熱交換コイルの下方に配設され、機体の左右側板の内側に所定間隔を有して内側仕切壁が配設されて、機体と仕切壁と内側仕切板で吹出部が形成され、仕切板と内側仕切板で吸込部が形成され、熱交換コイル間及び熱交換コイルと左右側板間に上前後隔壁が配設され、さらに、上前後隔壁と機体の前後板間に前分割板が配設されて、第1分室、第2分室、第3分室、第4分室が構成され、上前後隔壁と仕切板にて第5分室が構成され、それぞれ個別のモーターにて駆動する個別の送風機より、各分室に送り出された空気は、共有の熱交換コイルのそれぞれの使用区画を使用して調和され、被空調空間に吹き出されるものである。
【0009】
【実施例】
以下、添付図面に基いて実施例を説明する。
図1において、符号10は本発明のファンコイルユニットを示している。
ファンコイルユニット10は、天井内部に据付けられる機体1と、機体1の下方で天井の室内側に面する化粧パネル部5より構成されている。
符号100・・・は分岐ダクトを示し、符号4・・・は各被空調空間の手元スイッチ(リモコン)を示し、符号41は手元スイッチ(リモコン)4・・・のコントロール盤を示し、符号42は結露水の水抜き部を示し、符号43、44は熱交換コイルの給排水管を示している。
【0010】
機体1は左右側板11、11、前後側板12、12と、上面板13から形成された下方が開口する箱型をなしている。
そして、機体1内の上部に左右に所定間隔を有して2つの熱交換コイル14、14が平行に配設され、熱交換コイル14、14の下方にドレンパン15、15が配設され、ドレンパン15、15間と、ドレンパン15、15の下方に、空気漏れを防ぐ為に仕切板16が配設され、仕切板16の下方に被空調空間に対応する数の送風機17・・・が配設され、吸込んだ空気を上方向けて吹出す送風機吹出口171を仕切板16に臨ませている。
符号161は送風機17のモーター取り付け板を示している。
【0011】
そして、機体1の左右側板11、11の内側で、熱交換コイルの左右側板11、11側に、左右側板11、11と所定間隔を有し、平行に内側仕切壁18、18が配設されて、機体1と仕切板16と内側仕切壁18、18で、吹出部20が形成され、仕切板16と内側仕切壁18、18で吸込部30が形成されている。
吹出部20は、熱交換コイル14、14間、及び、熱交換コイル14、14と左右側板11、11間に配設された上前後隔壁21、22にて前後方向に3分割されると共に、上前隔壁21の左右方向中央部と機体1の前板12の左右方向中央部間に前分割板23が配設され、第1分室A、第2分室Bが構成される。
【0012】
さらに、上記同様、上後隔壁22の左右方向中央部と機体1の後板12の左右方向中央部間に後分割板24が配設され、第3分室C、第4分室Dが構成されている。
そして、第1分室A、第2分室B、と第3分室C、第4分室D間には上前後隔壁21、22にて形成される第5分室Eが構成される。
【0013】
すなわち、それぞれ個別のモーター4・・・にて駆動する個別の送風機17・・・より、第1分室A、第2分室B、第3分室C、第4分室D、第5分室Eに送り出された空気は、共有の熱交換コイル14、14のそれぞれの使用区画を通過して調和空気となる。
【0014】
一方、第1分室A、第2分室B、第3分室C、第4分室Dの内側仕切壁18、18の上端部と左右側板11、11間と、機体1の前後板12、12と上前後隔壁21、22の下端間に送風仕切板19、19が配設されている。
そして、左右側板11、11の上部に上記各分室A、B、C、Dに対応して調和空気吹出口25・・・が形成され、各分室A、B、C、Dの調和空気は調和空気吹出口25・・・より吹出され、ダクト100・・・にて被空調空間の個別空間(病室のカーテン等で区画された患者のベッド廻り)に導かれる。
又、分室Eの調和空気は機体1の左右側板11、11と、内側仕切板18、18と、上前後隔壁21、22と、送風仕切板19、19間より化粧パネル5方向に吹き出される。
【0015】
化粧パネル部5は、周部上面が天井面の室内側に当接する外枠体51と、外枠体51の左右端部と所定間隔を有して内側に配設され、機体1の左右側板11、11と内側仕切板18、18間に連通する吹出溝52、52が形成され、フィルター53が設けられた内枠体54と、内枠体54の左右端部と所定間隔を有して配設され、吸込部30に連通する吸込溝55、55となした着脱パネル56より構成されている。
すなわち、分室Eより吹き出された調和空気は、機体1の左右側板11、11と内側仕切板18、18と送風仕切板19、19間より拡散した状態で、吹出溝52、52より被空調空間の共用空間(病室内の通路等)に吹き出される。
【0016】
本発明は上記の如く構成され、病室内の共用空間の中央部の天井面に設置されるが、病室の構成によっては廊下側に設置し、共用空間にダクトを介して、調和空気を吹出すようにしても良い。
この場合、上前後隔壁21、22の下端部間を閉塞し、分室Eに対応する左右側板11、11に調和空気吹出口を設けダクト100・・・にて共用空間に導かれる事となる。
【0017】
【発明の効果】
特許請求の範囲の請求項1に記載の発明によれば、複数の被空調空間に対応して複数個の分室に区画され、各分室は、それぞれ独立して駆動する送風機と、分室ごとに使用される範囲が区画された共用の熱交換コイルを内部に有しているので、熱交換コイルを通過する風量は稼働している送風機の数(空調している被空調空間の数)に影響されることがなく、高、中、低の設定温度が常に安定したものとなるだけでなく、内部に設けられた熱交換コイルを通過する空気の通過抵抗より、送風機の吸込み側の抵抗のほうがはるかに少ないので、ダンパーを設けなくても被空調空間からの逆流が防止でき、その分安価に製作できる。
特許請求の範囲の請求項2に記載の発明によれば、上記効果に加え、共用空間は機体本体下方の長手方向全幅から吹出した調和空気によって調和する構成としているので、共用空間を広範囲に渡って空調することができる。
特許請求の範囲の請求項3に記載の発明によれば、請求項1の発明と同じ効果がある。
【図面の簡単な説明】
【図1】本発明の正面図
【図2】第1、第2分室部分の要部縦断面図
【図3】第5分室部分の要部縦断面図
【図4】本発明の要部横断面図
【図5】図3のF−F線要部断面図
【符号の説明】
1 機体
10 ファンコイルユニット
14 熱交換コイル
16 仕切板
17 送風機
18 内側仕切壁
20 吹出部
21 上前隔壁
22 上後隔壁
23 前分割板
24 後分割板
A 第1分室
B 第2分室
C 第3分室
D 第4分室
E 第5分室
[0001]
TECHNICAL FIELD OF THE INVENTION
The present invention particularly relates to a fan coil unit for individually air-conditioning a hospital room in a multi-bed room for each bed.
[0002]
[Prior art]
Conventionally, when a single air conditioner individually air-conditions a plurality of beds (spaces to be air-conditioned), ducts are arranged from the air conditioner to a plurality of air-conditioned spaces, and a variable air flow ( There has been a method of providing air conditioning by providing a VAV) unit.
However, in this method, when controlling the static pressure while changing the air volume of each air-conditioned space, there is a disadvantage that the control device becomes complicated and the cost increases.
Therefore, a heat exchange chamber provided with a heat exchange coil in the air conditioner body and a plurality of branch paths communicating with the heat exchange chamber are formed, and each branch path is formed in the direction from the heat exchange chamber toward the branch path. There has been provided a fan coil unit having a configuration in which a blower for sending air and a damper mechanism for preventing backflow from the air-conditioned space are provided. (For example, see Patent Document 1)
[0003]
According to the above-described configuration, the heat exchange coil can extend the heat exchange coil to the full width even when air-conditioning the entire air-conditioned space, or air-conditioning only one location and not air-conditioning the other air-conditioned space. Since it is always used across the air, it is very difficult to control the blowing temperature for each space to be conditioned.
In other words, while the amount of air passing through the heat exchange coil constantly changes depending on the number of operating blowers (the number of air-conditioned spaces to be air-conditioned), the heat exchange coil is used at a maximum width regardless of the amount of air. Therefore, the high, medium, and low set blowing temperatures to the air-conditioned space are not constant depending on the number of operating blowers.
Further, since the respective branch channels are communicated via the heat exchange chamber, the air to be conditioned does not pass through the heat exchange coil, and the air flows, and a damper for preventing a backflow from the air conditioned space is provided. It became necessary, which caused the cost to increase.
[0004]
[Patent Document 1]
Japanese Patent No. 2,930,295
[Problems to be solved by the invention]
The present invention provides a fan coil that can be manufactured at a low cost with a simple structure and that can stabilize the temperature setting of each air-conditioned space regardless of the number of operating blowers (the number of air-conditioned air-conditioned spaces). The purpose is to provide units.
[0006]
[Means for solving the problem]
In order to solve the above-mentioned problem, a first feature of the present invention is a fan coil unit that individually supplies air sucked into an airframe to a plurality of air-conditioned spaces. Is divided into a plurality of compartments corresponding to the space to be air-conditioned, and each compartment has a blower that is independently driven and a common heat exchange coil in which the range used for each compartment is partitioned. Is what it is.
[0007]
Next, a second feature according to the present invention is that, in addition to the first feature, the air-conditioned space is composed of a plurality of individual spaces and one common space, and the individual spaces are divided through a duct. The air is conditioned by air, and the common space is conditioned by conditioned air blown out from the entire longitudinal width below the main body.
[0008]
Next, a third feature of the present invention is a fan coil unit that shunts the air sucked into the airframe and supplies the air to a plurality of air-conditioned spaces. Two heat exchange coils are disposed in parallel at a predetermined interval, and a partition plate facing an outlet of a blower that blows out the sucked air upward is disposed below the two heat exchange coils. Inside partitions are arranged at predetermined intervals inside the left and right plates, a blowout portion is formed by the fuselage, the partition walls, and the inside partition plate, and a suction portion is formed by the partition plate and the inside partition plate, and heat exchange is performed. Upper and lower partitions are disposed between the coils and between the heat exchange coil and the left and right plates, and a front split plate is disposed between the upper and lower partitions and the front and rear plates of the fuselage. The fifth and fourth compartments are composed of a compartment and a fourth compartment, and the fifth compartment is composed of the upper and lower partition walls and the partition plate. From individual blowers driven by another motor, the air fed to each compartment, are harmonized using each use section of the heat exchange coils of shared, it is intended to be blown into the conditioned space.
[0009]
【Example】
Hereinafter, embodiments will be described with reference to the accompanying drawings.
In FIG. 1, reference numeral 10 indicates a fan coil unit of the present invention.
The fan coil unit 10 includes a body 1 installed inside the ceiling, and a decorative panel unit 5 that faces the indoor side of the ceiling below the body 1.
Reference numeral 100 denotes a branch duct, reference numeral 4 denotes a hand switch (remote control) of each space to be air-conditioned, reference numeral 41 denotes a control panel of the hand switch (remote control) 4,. Denotes a drain portion of dew water, and reference numerals 43 and 44 denote water supply / drain pipes of a heat exchange coil.
[0010]
The fuselage 1 has a box shape formed by left and right side plates 11, 11, front and rear side plates 12, 12 and an upper surface plate 13 and having a downward opening.
Then, two heat exchange coils 14, 14 are disposed in parallel at a predetermined interval on the left and right in the upper part of the body 1, and drain pans 15, 15 are disposed below the heat exchange coils 14, 14, and the drain pans are disposed. A partition plate 16 is disposed between 15 and 15 and below the drain pans 15 and 15 to prevent air leakage, and a number of fans 17... Corresponding to the space to be air-conditioned are disposed below the partition plate 16. The blower outlet 171 that blows out the sucked air upward faces the partition plate 16.
Reference numeral 161 indicates a motor mounting plate of the blower 17.
[0011]
Inside the left and right side plates 11 and 11 of the body 1, on the left and right side plates 11 and 11 side of the heat exchange coil, inner partition walls 18 and 18 are provided in parallel with a predetermined distance from the left and right side plates 11 and 11. The airframe 20 is formed by the body 1, the partition plate 16 and the inner partition walls 18, 18, and the suction portion 30 is formed by the partition plate 16 and the inner partition walls 18, 18.
The blowout section 20 is divided into three parts in the front-rear direction by upper and lower partition walls 21 and 22 disposed between the heat exchange coils 14 and 14 and between the heat exchange coils 14 and 14 and the left and right side plates 11 and 11, A front dividing plate 23 is disposed between the left-right central portion of the upper front partition 21 and the left-right central portion of the front plate 12 of the body 1, and a first compartment A and a second compartment B are configured.
[0012]
Further, similarly to the above, the rear split plate 24 is disposed between the left-right central portion of the upper rear partition 22 and the left-right central portion of the rear plate 12 of the body 1, and the third compartment C and the fourth compartment D are configured. I have.
A fifth compartment E formed by the upper and lower partitions 21 and 22 is provided between the first and second compartments A and B, the third compartment C, and the fourth compartment D.
[0013]
That is, the air is sent to the first compartment A, the second compartment B, the third compartment C, the fourth compartment D, and the fifth compartment E from the individual blowers 17 driven by the individual motors 4. The generated air passes through the respective use sections of the shared heat exchange coils 14 and 14 to become conditioned air.
[0014]
On the other hand, the upper end portions of the inner partition walls 18, 18 of the first compartment A, the second compartment B, the third compartment C, and the fourth compartment D, between the left and right side plates 11, 11, and the front and rear plates 12, 12, of the body 1 Ventilation partition plates 19, 19 are disposed between the lower ends of the front and rear partition walls 21, 22.
The conditioned air outlets 25... Are formed in the upper portions of the left and right side plates 11, 11 corresponding to the respective compartments A, B, C, D, and the conditioned air of each of the compartments A, B, C, D is conditioned. The air is blown out from the air outlets 25... And guided to the individual space of the air-conditioned space (around the bed of the patient partitioned by the curtain or the like in the sick room) through the duct 100.
In addition, the conditioned air in the compartment E is blown out toward the decorative panel 5 from between the left and right side plates 11, 11, the inner partition plates 18, the upper and lower partition walls 21, 22, and the ventilation partition plates 19, 19 of the body 1. .
[0015]
The decorative panel unit 5 includes an outer frame body 51 whose peripheral upper surface is in contact with the indoor side of the ceiling surface, and is disposed inside the left and right end portions of the outer frame body 51 with a predetermined space therebetween. Blowing grooves 52, 52 communicating between 11, 11 and the inner partition plates 18, 18 are formed, and have an inner frame 54 provided with a filter 53, and a predetermined distance from the left and right ends of the inner frame 54. It is provided with a detachable panel 56 which is provided and forms suction grooves 55, 55 communicating with the suction part 30.
That is, the conditioned air blown out from the branch E is diffused from the left and right side plates 11, 11, the inner partition plates 18, 18 and the blower partition plates 19, 19 of the airframe 1, and is conditioned from the blowout grooves 52, 52. Is blown out to a common space (eg, a passage in a hospital room).
[0016]
The present invention is configured as described above and is installed on the ceiling surface in the center of the common space in the sickroom, but is installed on the corridor side depending on the configuration of the sickroom, and blows out conditioned air through the duct to the common space. You may do it.
In this case, the space between the lower ends of the upper and lower partitions 21 and 22 is closed, and conditioned air outlets are provided in the left and right side plates 11 and 11 corresponding to the compartment E, and are guided to the common space by the ducts 100.
[0017]
【The invention's effect】
According to the invention described in claim 1 of the claims, a plurality of compartments are divided corresponding to the plurality of conditioned spaces, and each compartment is used independently for each of the blower and the blower that is used for each compartment. Since the heat exchange coil has a shared heat exchange coil with a divided area inside, the amount of air passing through the heat exchange coil is affected by the number of operating blowers (the number of air-conditioned spaces to be air-conditioned). Not only does the set temperature of high, medium, and low always become stable, but also the resistance on the suction side of the blower is far greater than the resistance of air passing through the heat exchange coil provided inside. Therefore, backflow from the space to be air-conditioned can be prevented without providing a damper, and the device can be manufactured at a lower cost.
According to the invention described in claim 2 of the appended claims, in addition to the above-mentioned effects, the common space is configured to be harmonized with conditioned air blown from the entire width in the longitudinal direction below the fuselage main body. Air conditioning.
According to the third aspect of the present invention, the same effect as that of the first aspect is obtained.
[Brief description of the drawings]
FIG. 1 is a front view of the present invention. FIG. 2 is a longitudinal sectional view of a main part of first and second compartments. FIG. 3 is a longitudinal sectional view of a principal part of a fifth compartment part. FIG. FIG. 5 is a cross-sectional view of a main part taken along line FF in FIG.
DESCRIPTION OF SYMBOLS 1 Airframe 10 Fan coil unit 14 Heat exchange coil 16 Partition plate 17 Blower 18 Inner partition wall 20 Blow-out part 21 Upper front partition 22 Upper rear partition 23 Front division plate 24 Rear division plate A 1st compartment B 2nd compartment C 3rd compartment D 4th branch E 5th branch

Claims (3)

機体内部に吸い込まれた空気を複数の被空調空間に個別に給気するファンコイルユニットであって、機体内部は、複数の被空調空間に対応して複数個の分室に区画され、各分室は、それぞれ独立して駆動する送風機と、分室ごとに使用される範囲が区画された共用の熱交換コイルを内部に有していることを特徴とするファンコイルユニット。A fan coil unit that individually supplies air sucked into the body to a plurality of air-conditioned spaces, wherein the body is divided into a plurality of compartments corresponding to the plurality of air-conditioned spaces, and each of the compartments is A fan coil unit comprising: a blower that is driven independently of each other; and a common heat exchange coil in which a range used for each of the compartments is partitioned. 被空調空間は、複数の個別空間と一つの共用空間よりなり、個別空間はダクトを介して分流した調和空気によって空調し、共用空間は機体本体下方の長手方向全幅から吹き出した調和空気によって空気調和することを特徴とする請求項2に記載のファンコイルユニット。The space to be conditioned is composed of a plurality of individual spaces and one common space.The individual spaces are conditioned by conditioned air diverted through ducts, and the shared space is air-conditioned by conditioned air blown out from the entire width in the longitudinal direction below the body of the aircraft. The fan coil unit according to claim 2, wherein: 機体内部に吸い込まれた空気を分流して、複数の被空調空間に給気するファンコイルユニットであって、機体内の上部に左右に所定間隔を有して平行に2つの熱交換コイルが配設され、吸い込んだ空気を上方に向けて吹き出す送風機の吹出口が臨む仕切板が2つの熱交換コイルの下方に配設され、機体の左右側板の内側に所定間隔を有して内側仕切壁が配設されて、機体と仕切壁と内側仕切板で吹出部が形成され、仕切板と内側仕切板で吸込部が形成され、熱交換コイル間及び熱交換コイルと左右側板間に上前後隔壁が配設され、さらに、上前後隔壁と機体の前後板間に前分割板が配設されて、第1分室、第2分室、第3分室、第4分室が構成され、上前後隔壁と仕切板にて第5分室が構成され、それぞれ個別のモーターにて駆動する個別の送風機より、各分室に送り出された空気は、共有の熱交換コイルのそれぞれの使用区画を使用して空調され、被空調空間に吹き出される事を特徴とするファンコイルユニット。A fan coil unit for diverting air sucked into the airframe and supplying air to a plurality of air-conditioned spaces, wherein two heat exchange coils are arranged in parallel at a predetermined interval on the left and right in the upper portion of the airframe. A partition plate facing the blower outlet of the blower that blows out the sucked air upward is disposed below the two heat exchange coils, and an inner partition wall having a predetermined interval is provided inside the left and right side plates of the body. Arranged, a blowout portion is formed by the fuselage, the partition wall, and the inner partition plate, a suction portion is formed by the partition plate and the inner partition plate, and upper and lower partition walls between the heat exchange coils and between the heat exchange coil and the left and right side plates. A front division plate is further disposed between the upper front and rear bulkheads and the front and rear plates of the fuselage to form first, second, third and fourth subchambers. The fifth branch is composed of separate From air blower, the air fed to each compartment is conditioned using the respective use sections of the heat exchange coils of shared, fan coil unit, characterized in that the blown onto the conditioned space.
JP2003035241A 2003-02-13 2003-02-13 Fan coil unit Pending JP2004245489A (en)

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Cited By (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
JP2007057174A (en) * 2005-08-25 2007-03-08 Shimizu Corp Personal air-conditioning system
EP1798491A1 (en) * 2005-12-19 2007-06-20 AERMEC S.p.A. Modular air-conditioning unit

Cited By (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
JP2007057174A (en) * 2005-08-25 2007-03-08 Shimizu Corp Personal air-conditioning system
EP1798491A1 (en) * 2005-12-19 2007-06-20 AERMEC S.p.A. Modular air-conditioning unit

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